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本文引用的文献

1
Strong selection genome-wide enhances fitness trade-offs across environments and episodes of selection.强选择全基因组增强了跨环境和选择事件的适应权衡。
Evolution. 2014 Jan;68(1):16-31. doi: 10.1111/evo.12259. Epub 2013 Sep 16.
2
Massive genomic variation and strong selection in Arabidopsis thaliana lines from Sweden.瑞典拟南芥品系中的大规模基因组变异和强烈选择。
Nat Genet. 2013 Aug;45(8):884-890. doi: 10.1038/ng.2678. Epub 2013 Jun 23.
3
Genetic architecture of flowering time differentiation between locally adapted populations of Arabidopsis thaliana.开花时间分化的遗传结构:拟南芥地方适应种群之间的差异。
New Phytol. 2013 Mar;197(4):1321-1331. doi: 10.1111/nph.12109. Epub 2013 Jan 11.
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Adaptive evolution: evaluating empirical support for theoretical predictions.适应性进化:评估理论预测的经验支持。
Nat Rev Genet. 2012 Dec;13(12):867-77. doi: 10.1038/nrg3322.
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Genetic basis of adaptation in Arabidopsis thaliana: local adaptation at the seed dormancy QTL DOG1.拟南芥适应的遗传基础:种子休眠 QTL DOG1 的局部适应。
Evolution. 2012 Jul;66(7):2287-302. doi: 10.1111/j.1558-5646.2012.01590.x. Epub 2012 Feb 28.
6
Reduced inbreeding depression in peripheral relative to central populations of a monocarpic herb.在一次性结实的草本植物中,周边种群比中心种群的近交衰退程度更低。
J Evol Biol. 2012 Jun;25(6):1200-8. doi: 10.1111/j.1420-9101.2012.02510.x. Epub 2012 Apr 23.
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The genomic basis of adaptive evolution in threespine sticklebacks.三种棘鱼适应性进化的基因组基础。
Nature. 2012 Apr 4;484(7392):55-61. doi: 10.1038/nature10944.
8
Reciprocal transplants demonstrate strong adaptive differentiation of the model organism Arabidopsis thaliana in its native range.同种异体移植表明模式生物拟南芥在其原生范围内具有强烈的适应性分化。
New Phytol. 2012 Jun;194(4):1112-1122. doi: 10.1111/j.1469-8137.2012.04112.x. Epub 2012 Mar 20.
9
Genetic trade-offs and conditional neutrality contribute to local adaptation.遗传权衡和条件中性有助于地方适应。
Mol Ecol. 2013 Feb;22(3):699-708. doi: 10.1111/j.1365-294X.2012.05522.x. Epub 2012 Mar 15.
10
The QTN program and the alleles that matter for evolution: all that's gold does not glitter.QTN 项目与影响进化的等位基因:并非所有闪光的都是金子。
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遗传图谱的适应性揭示拟南芥的适应权衡。

Genetic mapping of adaptation reveals fitness tradeoffs in Arabidopsis thaliana.

机构信息

Department of Plant Ecology and Evolution, Evolutionary Biology Centre, Uppsala University, SE-752 36 Uppsala, Sweden.

出版信息

Proc Natl Acad Sci U S A. 2013 Dec 24;110(52):21077-82. doi: 10.1073/pnas.1316773110. Epub 2013 Dec 9.

DOI:10.1073/pnas.1316773110
PMID:24324156
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3876199/
Abstract

Organisms inhabiting different environments are often locally adapted, and yet despite a considerable body of theory, the genetic basis of local adaptation is poorly understood. Unanswered questions include the number and effect sizes of adaptive loci, whether locally favored loci reduce fitness elsewhere (i.e., fitness tradeoffs), and whether a lack of genetic variation limits adaptation. To address these questions, we mapped quantitative trait loci (QTL) for total fitness in 398 recombinant inbred lines derived from a cross between locally adapted populations of the highly selfing plant Arabidopsis thaliana from Sweden and Italy and grown for 3 consecutive years at the parental sites (>40,000 plants monitored). We show that local adaptation is controlled by relatively few genomic regions of small to modest effect. A third of the 15 fitness QTL we detected showed evidence of tradeoffs, which contrasts with the minimal evidence for fitness tradeoffs found in previous studies. This difference may reflect the power of our multiyear study to distinguish conditionally neutral QTL from those that reflect fitness tradeoffs. In Sweden, but not in Italy, the local genotype underlying fitness QTL was often maladaptive, suggesting that adaptation there is constrained by a lack of adaptive genetic variation, attributable perhaps to genetic bottlenecks during postglacial colonization of Scandinavia or to recent changes in selection regime caused by climate change. Our results suggest that adaptation to markedly different environments can be achieved through changes in relatively few genomic regions, that fitness tradeoffs are common, and that lack of genetic variation can limit adaptation.

摘要

生活在不同环境中的生物通常具有局部适应性,但尽管有相当多的理论,局部适应性的遗传基础仍未得到很好的理解。未解决的问题包括适应性基因座的数量和效应大小、局部有利基因座是否会降低其他地方的适应性(即适应性权衡),以及缺乏遗传变异是否会限制适应性。为了解决这些问题,我们在来自瑞典和意大利的高度自交拟南芥局部适应种群之间的杂交后代的 398 个重组自交系中定位了总适应性的数量性状基因座(QTL),并在亲本地点连续生长了 3 年(监测了超过 40000 株植物)。我们表明,局部适应性是由相对较少的基因组区域控制的,这些区域的效应较小或适中。在我们检测到的 15 个适应性 QTL 中,有三分之一表现出权衡的证据,这与之前研究中发现的适应性权衡的最小证据形成对比。这种差异可能反映了我们多年研究的力量,可以区分条件中性 QTL 和反映适应性权衡的 QTL。在瑞典,但不在意大利,适应适应性 QTL 的本地基因型通常是不利的,这表明那里的适应性受到缺乏适应性遗传变异的限制,这可能归因于斯堪的纳维亚半岛后冰河时代殖民过程中的遗传瓶颈,或气候变化引起的选择制度的近期变化。我们的研究结果表明,对明显不同的环境的适应可以通过相对较少的基因组区域的变化来实现,适应性权衡很常见,缺乏遗传变异可能会限制适应性。